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EP0698804A2 - Optical low pass filter, polariser and liquid crystal display devices using such - Google Patents

Optical low pass filter, polariser and liquid crystal display devices using such
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Publication number
EP0698804A2
EP0698804A2EP95305673AEP95305673AEP0698804A2EP 0698804 A2EP0698804 A2EP 0698804A2EP 95305673 AEP95305673 AEP 95305673AEP 95305673 AEP95305673 AEP 95305673AEP 0698804 A2EP0698804 A2EP 0698804A2
Authority
EP
European Patent Office
Prior art keywords
pass filter
optical low
display device
optical
liquid
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
EP95305673A
Other languages
German (de)
French (fr)
Other versions
EP0698804A3 (en
Inventor
Shigeru c/o Omron Corporation Aoyama
Osamu c/o Omron Corporation Nishiizaki
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Omron Corp
Original Assignee
Omron Corp
Omron Tateisi Electronics Co
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Omron Corp, Omron Tateisi Electronics CofiledCriticalOmron Corp
Publication of EP0698804A2publicationCriticalpatent/EP0698804A2/en
Publication of EP0698804A3publicationCriticalpatent/EP0698804A3/en
Withdrawnlegal-statusCriticalCurrent

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Abstract

In a liquid crystal display device having an optical low-pass filter provided on a display screen, the optical low-pass filter is fixed to a liquid-crystal panel or a polarizing plate through a bonding layer having a refractive index different from the refractive index of the optical low-pass filter in a state where a surface having an optical function of the optical low-pass filter is directed toward a liquid-crystal panel or the polarizing plate. Further, in a liquid crystal display device having a phase plate, an optical low-pass filter is integrally formed on a phase plate. The occurrence of rainbow-shaped interference fringes is prevented. A liquid crystal display device is miniaturized and the number of components thereof is reduced. The fabrication precision of an optical low-pass filter is improved.

Description

Claims (60)

  1. A dot matrix-type display device in which an optical low-pass filter is provided on a display screen, wherein
       said optical low-pass filter is fixed to a member included in said display device through an adhesive bonding layer having a refractive index different from the refractive index of the optical low-pass filter in a state where a surface having an optical function of said optical low-pass filter is directed toward said member.
  2. The dot matrix-type display device according to claim 1, wherein
       said member of the display device is a glass substrate of a liquid-crystal panel in a liquid crystal display device.
  3. The dot matrix-type display device according to claim 1, wherein
       said member of the display device is a polarizing plate in a liquid crystal display device.
  4. The dot matrix-type display device according to claim 1, wherein
       the external shape of said optical low-pass filter is smaller than the external shape of said display device or said member of the display device.
  5. The dot matrix-type display device according to claim 1, wherein
       the thickness of said optical low-pass filter is smaller than the thickness of said display device or said member of the display device.
  6. The dot matrix-type display device according to any one of claims 1 to 5, wherein
       a groove is formed on the outer periphery of the surface having an optical function of said optical low-pass filter.
  7. The dot matrix-type display device according to any one of claims 1 to 5, wherein
       a sidewall is formed on the outer periphery of the surface having an optical function of said optical low-pass filter.
  8. The dot matrix-type display device according to any one of claims 1 to 6, wherein
       a spacer composed of a material having a refractive index substantially equal to that of said adhesive bonding layer is provided between the surface having an optical function of said optical low-pass filter and said member of the display device.
  9. The dot matrix-type display device according to any one of claims 1 to 8, wherein
       the refractive index of the adhesive bonding layer provided between the surface having an optical function of said optical low-pass filter and said member of the display device and the refractive index of said member of the display device are substantially equal.
  10. The dot matrix-type display device according to any one of claims 1 to 9, wherein
       said optical low-pass filter is fixed to said member of the display device through the adhesive bonding layer, on a surface opposite to the surface having an optical function of said optical low-pass filter, and
       the refractive index of the adhesive bonding layer is approximately equal to the refractive index of the optical low-pass filter.
  11. A dot matrix-type display device comprising a phase plate, wherein
       an optical low-pass filter is integrally formed on said phase plate.
  12. The dot matrix-type display device according to claim 11, wherein
       a diffraction grating optically functioning as said optical low-pass filter is formed on one surface of said phase plate.
  13. The dot matrix-type display device according to claim 11, wherein
       said optical low-pass filter is formed on one surface of said phase plate by resin molding.
  14. The dot matrix-type display device according to claim 11, further comprising a liquid-crystal panel and polarizing plates arranged on both sides of the liquid-crystal panel,
       said phase plate on which said optical low-pass filter is integrally formed being provided between said liquid-crystal panel and one of said polarizing plates.
  15. The dot matrix-type display device according to claim 11, wherein
       said phase plate on which said optical low-pass filter is integrally formed is fixed to a member of the display device through the adhesive bonding layer.
  16. The dot matrix-type display device according to claim 15, wherein
       said optical low-pass filter is fixed to said member of the display device through an adhesive bonding layer having a different refractive index from the refractive index of the optical low-pass filter in a state where a surface having an optical function of the optical low-pass filter is directed toward said member of the display device.
  17. The dot matrix display device according to claim 15, wherein
       said member of the display device is a glass substrate of a liquid-crystal panel in a liquid crystal display device.
  18. The dot matrix-type display device according to claim 15, wherein
       said member of the display device is a polarizing plate in a liquid crystal display device.
  19. The dot matrix-type display device according to any one of claims 1 to 10 and claims 15 to 18, wherein
       said adhesive bonding layer is a pressure sensitive adhesive layer.
  20. The dot matrix-type display device according to any one of claims 1 to 10 and claims 15 to 18, wherein
       an anti-reflection film is formed on a flat surface of said member of the display device or said optical low-pass filter.
  21. The dot matrix-type display device according to claim 20, wherein
       said anti-reflection film comprises a plurality of thin films.
  22. The dot matrix-type display device according to any one of claims 1 to 10 and claims 15 to 18, wherein
       a flat surface of said member of the display device or said optical low-pass filter is subjected to anti-glare processing.
  23. The dot matrix-type display device according to any one of claims 1 to 22, wherein
       an end face of said optical low-pass filter is a light scattering surface.
  24. The dot matrix-type display device according to any one of claims 1 to 22, wherein
       an end face of said optical low-pass filter is a light absorbing surface.
  25. An optical low-pass filter, wherein
       a groove is formed on the outer periphery portion of a surface having an optical function of the optical low-pass filter.
  26. An optical low-pass filter, wherein
       a wall is formed on the outer periphery portion of a surface having an optical function of the optical low-pass filter.
  27. An optical low-pass filter, wherein
       a first pressure sensitive adhesive layer is formed on a surface having an optical function of the optical low-pass filter, and
       the outer surface of the first pressure sensitive adhesive layer is covered with a first separator.
  28. The optical low-pass filter according to claim 27, wherein
       a second pressure sensitive adhesive layer is formed on a surface opposite to the surface having an optical function of the optical low-pass filter, and
       the second outer surface of the pressure sensitive adhesive layer is covered with a second separator.
  29. An optical low-pass filter, wherein
       the optical low-pass filter is integrally formed on one surface of a polarizing plate.
  30. An optical low-pass filter, wherein
       an end face of the optical low-pass filter is a light scattering surface.
  31. An optical low-pass filter, wherein
       an end face of the optical low-pass filter is a light absorbing surface.
  32. An optical low-pass filter, wherein
       an anti-reflection film is formed on a surface opposite to a surface having an optical function of the optical low-pass filter.
  33. A polarizing plate comprising a polarizer and protective layers formed on both surfaces of the polarizer,
       an optical low-pass filter being integrally formed on either one of the protective layers.
  34. The polarizing plate according to claim 33, wherein
       a diffraction grating optically functioning as said optical low-pass filter is formed on an outer surface of said one of said protective layers.
  35. The polarizing plate according to claim 33, wherein
       said optical low-pass filter is formed on an outer surface of said one of said protective layers by resin molding.
  36. The polarizing plate according to any one of claims 33 to 35, wherein
       a pressure sensitive adhesive layer is formed on at least one surface of the polarizing plate, and
       the outer surface of the pressure sensitive adhesive layer is covered with a separator.
  37. A method of fabricating a polarizing plate, comprising the steps of:
       integrally forming an optical low-pass filter on one surface of a protective layer, and
       affixing the protective layer to a polarizer.
  38. The method according to claim 37, wherein
       said optical low-pass filter is formed on one surface of said protective layer by embossing.
  39. The method according to claim 37, wherein
       said optical low-pass filter is formed on one surface of said protective layer by resin molding.
  40. The method according to any one of claims 37 to 39, wherein
       a pressure sensitive adhesive resin is applied to at least one surface of said polarizing plate, and
       a separator is affixed to an outer surface of said pressure sensitive adhesive resin.
  41. An optical device comprising:
       a polarizer; and
       an optical low-pass filter bonded to one surface of the polarizer through an adhesive bonding layer.
  42. The optical device according to claim 41, wherein
       a pressure sensitive adhesive layer is formed on at least one surface of the optical device, and
       the outer surface of the pressure sensitive adhesive layer is covered with a separator.
  43. An optical device, wherein
       an optical low-pass filter is integrally formed on a phase plate.
  44. The optical device according to claim 43, wherein
       a diffraction grating optically functioning as said optical low-pass filter is formed on one surface of said phase plate.
  45. The optical device according to claim 43, wherein
       said optical low-pass filter is formed on one surface of said phase plate by resin molding.
  46. The optical device according to any one of claims 43 to 45, wherein
       a polarizing plate is bonded to one surface of the optical device through an adhesive bonding layer.
  47. The optical device according to any one of claims 43 to 46, wherein
       an anti-reflection film is formed on one surface of the optical device.
  48. The optical device according to any one of claims 43 to 46, wherein
       one surface of the optical device is subjected to anti-glare processing.
  49. The optical device according to any one of claims 43 to 48, wherein
       a pressure sensitive adhesive layer is formed on at least one surface of the optical device, and
       the outer surface of the pressure sensitive adhesive layer is covered with a separator.
  50. A portable television comprising the dot matrix-type display device according to claim 1 or 11.
  51. A view finder comprising the dot matrix-type display device according to claim 1 or 11.
  52. A television projector comprising the dot matrix-type display device according to claim 1 or 11.
  53. An image display system comprising the dot matrix-type display device according to claim 1 or 11.
  54. A head mount display device comprising the dot matrix-type display device according to claim 1 or 11.
  55. An imaging device, wherein
       a large number of photoelectric converting elements are arranged in two dimensions, and
       an optical low-pass filter is provided on the photoelectric converting elements through an adhesive bonding layer or a pressure sensitive adhesive layer.
  56. A liquid crystal display device comprising:
       a liquid-crystal panel;
       an optical low-pass filter fixed to one surface of the liquid-crystal panel through an adhesive bonding layer or a pressure sensitive adhesive layer; and
       two polarizing plates, whose polarization directions are perpendicular to each other, arranged with the liquid-crystal panel and the optical low-pass filter interposed therebetween.
  57. A liquid crystal display device comprising:
       a liquid-crystal panel;
       two polarizing plates, whose polarization directions are perpendicular to each other, arranged with the liquid-crystal panel interposed therebetween; and
       an optical low-pass filter fixed to the polarizing plate on the side of a display screen through an adhesive bonding layer or a pressure sensitive adhesive layer.
  58. The liquid crystal display device according to claim 56 or 57, wherein
       an adhesive bonding layer or a pressure sensitive adhesive layer is provided on a surface having an optical function of the optical low-pass filter, and
       the refractive index of the optical low-pass filter and the refractive index of the adhesive bonding layer or the pressure sensitive adhesive layer differ from each other.
  59. A liquid crystal display device comprising:
       a liquid-crystal panel;
       two polarizing plates, whose polarization directions are perpendicular to each other, arranged with said liquid-crystal panel interposed therebetween; and
       a phase plate arranged between said polarizing plate on the side of a display screen and said liquid-crystal panel,
       an optical low-pass filter being integrally formed on said phase plate.
  60. The liquid crystal display device according to claim 59, wherein
       said polarizing plate on the side of the display screen, said phase plate, and said liquid-crystal panel are fixed to each other through an adhesive bonding layer or a pressure sensitive adhesive layer.
EP95305673A1994-08-261995-08-15Optical low pass filter, polariser and liquid crystal display devices using suchWithdrawnEP0698804A3 (en)

Applications Claiming Priority (2)

Application NumberPriority DateFiling DateTitle
JP224002/941994-08-26
JP224002941994-08-26

Publications (2)

Publication NumberPublication Date
EP0698804A2true EP0698804A2 (en)1996-02-28
EP0698804A3 EP0698804A3 (en)1998-09-02

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ID=16807056

Family Applications (1)

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EP95305673AWithdrawnEP0698804A3 (en)1994-08-261995-08-15Optical low pass filter, polariser and liquid crystal display devices using such

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EP (1)EP0698804A3 (en)
KR (1)KR100235393B1 (en)

Cited By (8)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
EP0807842A3 (en)*1996-05-141998-11-18Sick AGOptical arrangement with diffractive optical element
WO2001075517A1 (en)*2000-04-032001-10-113M Innovative Properties CompanyLight directing construction having corrosion resistant feature
EP1501292A3 (en)*2003-07-162005-04-27Seiko Epson CorporationVideoprojector
EP1498749A3 (en)*2003-07-162005-07-27Seiko Epson CorporationSpatial light modulator and projector
WO2007019138A1 (en)*2005-08-042007-02-153M Innovative Properties CompanyArticle having a birefringent surface and microstructured features having a variable pitch or angles for use as a blur filter
KR20200015053A (en)*2018-08-022020-02-12엘지디스플레이 주식회사Liquid crystal display device
CN114924413A (en)*2022-04-282022-08-19歌尔光学科技有限公司Optical waveguide structure, preparation method of optical waveguide structure and head-mounted display device
CN117806119A (en)*2016-12-022024-04-02分子印记公司 Configuring optical layers in an imprint lithography process

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* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US9134471B2 (en)2006-06-282015-09-153M Innovative Properties CompanyOriented polymeric articles and method

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JPS63114475A (en)1986-10-311988-05-19Minolta Camera Co LtdPicture display device
JPH04366917A (en)1991-06-141992-12-18Omron CorpImage display device and liquid crystal tv projector using liquid crystal panel, and conical optical element array used for the same

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JPS63114475A (en)1986-10-311988-05-19Minolta Camera Co LtdPicture display device
JPH04366917A (en)1991-06-141992-12-18Omron CorpImage display device and liquid crystal tv projector using liquid crystal panel, and conical optical element array used for the same

Cited By (19)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
EP0807842A3 (en)*1996-05-141998-11-18Sick AGOptical arrangement with diffractive optical element
US6069737A (en)*1996-05-142000-05-30Sick AgOptical arrangement with a diffractive optical element
US6626545B2 (en)1999-10-222003-09-303M Innovative Properties CoLight directing construction having corrosion resistant feature
WO2001075517A1 (en)*2000-04-032001-10-113M Innovative Properties CompanyLight directing construction having corrosion resistant feature
US6590711B1 (en)2000-04-032003-07-083M Innovative Properties Co.Light directing construction having corrosion resistant feature
KR100721884B1 (en)*2000-04-032007-06-04쓰리엠 이노베이티브 프로퍼티즈 캄파니 Methods of making light-oriented structures, display devices, and transflective devices comprising corrosion resistant features
US7113341B2 (en)2003-07-162006-09-26Seiko Epson CorporationSpatial light modulator and projector
US6981773B2 (en)2003-07-162006-01-03Seiko Epson CorporationProjector
EP1498749A3 (en)*2003-07-162005-07-27Seiko Epson CorporationSpatial light modulator and projector
EP1501292A3 (en)*2003-07-162005-04-27Seiko Epson CorporationVideoprojector
EP1780560A3 (en)*2003-07-162007-08-22Seiko Epson CorporationSpatial light modulator and projector
US7327519B2 (en)2003-07-162008-02-05Seiko Epson CorporationSpatial light modulator and projector
CN100405136C (en)*2003-07-162008-07-23精工爱普生株式会社 Spatial light modulation device and projector
CN100432755C (en)*2003-07-162008-11-12精工爱普生株式会社Spatial light modulator and projector
WO2007019138A1 (en)*2005-08-042007-02-153M Innovative Properties CompanyArticle having a birefringent surface and microstructured features having a variable pitch or angles for use as a blur filter
CN117806119A (en)*2016-12-022024-04-02分子印记公司 Configuring optical layers in an imprint lithography process
CN117806119B (en)*2016-12-022025-05-27分子印记公司Configuring optical layers in imprint lithography processes
KR20200015053A (en)*2018-08-022020-02-12엘지디스플레이 주식회사Liquid crystal display device
CN114924413A (en)*2022-04-282022-08-19歌尔光学科技有限公司Optical waveguide structure, preparation method of optical waveguide structure and head-mounted display device

Also Published As

Publication numberPublication date
KR960008655A (en)1996-03-22
KR100235393B1 (en)1999-12-15
EP0698804A3 (en)1998-09-02

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